87L用于串联电容器组和并联电抗器的长传输线

Z. Xu, I. Voloh, Terrence Smith
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引用次数: 1

摘要

首先介绍了串联电容器组和并联电抗器的原理和应用。分析了并联电抗器在正常和故障状态下的工作特性,以及并联电容器组在故障状态下的工作特性。特别讨论了这些装置对线路差动保护的影响。研究了继电器应用的挑战,重点是:在87L保护区内包括或不包括电抗器的优缺点,补偿充电电流的解决方案,开关电抗器的输入和输出,电容器组的电压和电流反转,次谐波频率瞬变以及MOV导通的影响。为了演示继电器应用的挑战,研究了一条长传输线,其中两个串联电容器组以大约三分之一的间隔安装在传输线上,两个并联电抗器组安装在两端。提出了两种配置方案。讨论了线路电流差分通信通道的布置,以达到最大的安全性和可靠性。详细讨论了线路电流差动继电器的整定选择。本文还介绍了一种计算线路差动保护充电电流补偿整定值的简单方法。
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87L application on long transmission line with series capacitor banks and shunt reactors
Principles and applications of series capacitor banks and shunt reactors are first introduced. Then, the impacts of these apparatus on power systems are reviewed, including the behaviors of shunt reactors in the normal and fault conditions, the behaviors of series capacitor banks under the fault conditions. The effects of these apparatus on the line differential protection are particularly discussed. Challenges of relay applications are investigated with the emphasis on: advantages and disadvantages of including or excluding reactors in the 87L protection zone, solutions to compensate charging current, switching reactors in and out, voltage and current inversion of capacitor banks, sub-harmonic frequency transients, and effects of MOV conducting. In order to demonstrate challenges of the relay application, a long transmission line is studied, where two series capacitor banks are installed at approximately one third intervals on the transmission line and two shunt reactor banks are installed at both ends. Two configuration schemes are presented. Arrangement of the line current differential communications channels to achieve maximum security and dependability is discussed. The settings selection of the line current differential relays is discussed in detail. A simple method to calculate charging current compensation settings for line differential protection is described as well.
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